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Biomedical subjects

H Yamamichi

Publications and source records attributed to H Yamamichi.

8 recordsLinked to original sources

Creatine kinase gene mutation in a patient with muscle creatine kinase deficiency.

BACKGROUND: We describe a 56-year-old woman admitted to the hospital with a diagnosis of acute myocardial infarction without an increase of serum creatine kinase (CK) activity during her clinical course. She died on the 11th hospital day, and the diagnosis was confirmed by autopsy. The patient had had no previous muscular symptoms. METHODS: Expression of the CK-muscle (CK-M) protein in cardiac tissue was examined by immunoblotting and immunochemical staining. CK-M mRNA expression was estimated by semiquantitative reverse transcription-PCR. Gene structure of CK-M was determined by Southern blotting and direct sequencing of 2251 bp. Existence of a point mutation in the CK-M gene was examined by restriction fragment length polymorphism analysis of PCR products (PCR-RFLP) in the patient and in 108 controls. RESULTS: CK-M protein in the myocardial tissue of the patient was substantially lower (103 +/- 7 ng/mg protein) than in control myocardial tissue (35 800 +/- 2860 ng/mg protein). Immunoreactive CK-M in the patient tissue sample was 0.3% of the value for the control sample. CK-M mRNA was 53-fold less in the patient sample compared with the control. This very low expression of CK-M mRNA was considered to be the primary reason for CK-M deficiency. Direct sequencing revealed a point mutation at residue 54 in exon 2, which was specific for the patient. No other abnormalities were found in the CK-M gene of the patient. CONCLUSIONS: This report identifies a molecular abnormality in human CK deficiency and discusses the physiologic relevance of CK-M.

Blotting, Southern↗

[Acute myocardial infarction without elevation of CK activity: analysis of CK-MM protein and gene of CK-MM].

A 56 year old female patient had acute myocardial infarction which was confirmed by autopsy. However the patient showed no elevation of CK activity in the serum. We proved the deficiency of CK-MM protein in her serum as well as in the myocardial tissues. To further elucidate the molecular mechanism we isolated and characterized genomic DNA and cDNA of CK-MM from the myocardial tissue of the patient and demonstrated the depression of mRNA of CK-MM which might be related with the deficiency of CK-MM protein. Point mutation at codon 54 [Exon 2, GAC (Asp)-->GGC(Gly)] was also demonstrated on the beta-sheet of CK-MM. Association of point mutation with depressed CK-MM is to be clarified.

Base Sequence↗